Department Polytechnic of Engineering and Architecture, University of Udine, Via del Cotonificio 108, 33100 Udine, Italy.
Department Polytechnic of Engineering and Architecture, University of Udine, Via del Cotonificio 108, 33100 Udine, Italy.
Sci Total Environ. 2021 Nov 1;793:148607. doi: 10.1016/j.scitotenv.2021.148607. Epub 2021 Jun 24.
Respirometry tests are a widely employed method in wastewater treatment field to characterize wastewater streams, assess toxic/inhibitory effects to the biomass, calibrate mathematical models. Respirometry can allow to fractionize the chemical oxygen demand (COD) in biodegradable and inert fractions, but also provide information related to biomass kinetics and stoichiometry through standardized laboratory techniques. Considering the increasing number of emerging contaminants detected in wastewater effluents, such as pharmaceuticals, personal care products and pesticides, respirometry can be a useful tool to promptly assess any toxic or inhibitory effect in wastewater treatment plants (WWTPs) operations. Beside conventional activated sludge (CAS), in recent years respirometric methods have been applied to innovative fields, such as moving-bed bio-reactors (MBBRs), fungi and microalgae, exploiting natural remediation methods. In particular, respirometry application to microalgae, through the so-called photo-respirometry, has been investigated in the latest years in the treatment of high-nutrient loaded streams, allowing resource recovery in biomass form. In this work, respirometric methods are first introduced from a theoretical basis and then critically discussed by considering the experimental apparatus, the available characterization protocols and the fields of application; the most recent literature findings on respirometry are coupled with authors' experience in the field. A comparison between physicochemical methods and respirometry is made, considering common protocols for WWTP modelling and calibration. The future research needed on the topic is finally outlined, including the coupling of respirometry with microbial community analysis, potentially leading to an enhanced process understanding, an extended respirometry utilization to get specific kinetic and stoichiometric parameters for modelling purposes, and a wider respirometry application as diagnosis tool in WWTP operations.
呼吸计量法测试是废水处理领域广泛采用的方法,用于对废水进行特征描述、评估对生物量的毒性/抑制影响、对数学模型进行校准。呼吸计量法可以将化学需氧量(COD)分为可生物降解和惰性两部分,还可以通过标准化实验室技术提供与生物量动力学和化学计量相关的信息。考虑到越来越多的新兴污染物(如药品、个人护理产品和农药)在废水排放中被检出,呼吸计量法可以成为一种有用的工具,用于及时评估废水处理厂(WWTP)运行中的任何毒性或抑制影响。除了传统的活性污泥(CAS)外,近年来呼吸计量法已应用于创新领域,如移动床生物反应器(MBBRs)、真菌和微藻,利用自然修复方法。特别是,近年来通过所谓的光呼吸计量法,将呼吸计量法应用于微藻处理高营养负荷流中,允许以生物质的形式进行资源回收,这方面的研究得到了广泛关注。在这项工作中,首先从理论基础上介绍了呼吸计量法,然后从实验装置、可用的特征描述协议和应用领域方面对其进行了批判性讨论;结合作者在该领域的经验,对呼吸计量法的最新文献研究结果进行了综述。对呼吸计量法和物理化学方法进行了比较,考虑了 WWTP 建模和校准的常用协议。最后概述了该主题未来的研究需求,包括将呼吸计量法与微生物群落分析相结合,这可能会提高对工艺的理解,将呼吸计量法更广泛地应用于获取特定的动力学和化学计量参数以用于建模目的,以及将呼吸计量法作为 WWTP 运行中的诊断工具进行应用。